Passari Ajit K, Gupta Vijai K, Singh Bhim P
Department of Biotechnology, Mizoram University , Aizawl , Mizoram , India.
Molecular Glyco-biotechnology Group, University of Ireland , Galway , Ireland , UK.
PeerJ. 2016 Jun 9;4:e2103. doi: 10.7717/peerj.2103. eCollection 2016.
Antimicrobial resistance poses a serious challenge to global public health. In this study, fifty bacterial strains were isolated from the sediments of a freshwater lake and were screened for antibiotic resistance. Out of fifty isolates, thirty-three isolates showed resistance against at least two of the selected antibiotics. Analysis of 16S rDNA sequencing revealed that the isolates belonged to ten different genera, namely Staphylococcus(n = 8), Bacillus(n = 7), Lysinibacillus(n = 4), Achromobacter(n=3), bacterium(n = 3), Methylobacterium(n = 2), Bosea(n = 2), Aneurinibacillus(n = 2), Azospirillum(n = 1), Novosphingobium(n = 1). Enterobacterial repetitive intergenic consensus (ERIC) and BOX-PCR markers were used to study the genetic relatedness among the antibiotic resistant isolates. Further, the isolates were screened for their antimicrobial activity against bacterial pathogens viz., Staphylococcus aureus(MTCC-96), Pseudomonas aeruginosa(MTCC-2453) and Escherichia coli(MTCC-739), and pathogenic fungi viz., Fusarium proliferatum (MTCC-286), Fusarium oxysporum (CABI-293942) and Fusarium oxy. ciceri (MTCC-2791). In addition, biosynthetic genes (polyketide synthase II (PKS-II) and non-ribosomal peptide synthetase (NRPS)) were detected in six and seven isolates, respectively. This is the first report for the multifunctional analysis of the bacterial isolates from a wetland with biosynthetic potential, which could serve as potential source of useful biologically active metabolites.
抗菌素耐药性对全球公共卫生构成了严峻挑战。在本研究中,从一个淡水湖的沉积物中分离出50株细菌菌株,并对其进行抗生素耐药性筛选。在这50株分离菌株中,有33株对至少两种所选抗生素表现出耐药性。16S rDNA测序分析表明,这些分离菌株属于10个不同的属,即葡萄球菌属(n = 8)、芽孢杆菌属(n = 7)、赖氨酸芽孢杆菌属(n = 4)、无色杆菌属(n = 3)、细菌属(n = 3)、甲基杆菌属(n = 2)、博斯氏菌属(n = 2)、类芽孢杆菌属(n = 2)、固氮螺菌属(n = 1)、新鞘氨醇菌属(n = 1)。利用肠杆菌重复基因间共有序列(ERIC)和BOX-PCR标记研究了抗生素耐药分离菌株之间的遗传相关性。此外,还对这些分离菌株针对细菌病原体(即金黄色葡萄球菌(MTCC - 96)、铜绿假单胞菌(MTCC - 2453)和大肠杆菌(MTCC - 739))以及致病真菌(即层出镰刀菌(MTCC - 286)、尖孢镰刀菌(CABI - 293942)和鹰嘴豆镰刀菌(MTCC - 2791))的抗菌活性进行了筛选。此外,分别在6株和7株分离菌株中检测到了生物合成基因(聚酮合酶II(PKS-II)和非核糖体肽合成酶(NRPS))。这是关于具有生物合成潜力的湿地细菌分离菌株多功能分析的首份报告,这些菌株可能是有用生物活性代谢物的潜在来源。